Search PubMed⌕ Search

Biomedical subjects

A C Dean

Publications and source records attributed to A C Dean.

At least 37 records · Page 2Linked to original sources

Action of stannous and stannic chlorides on bacteria.

Stannous or stannic chlorides reduced the growth rate of K. aerogenes, Ps. reptilovora and an unidentified bacterium in a minimal liquid medium and on agar plates. The greatest effect was observed with K. aerogenes and was accompanied by a decreased viability, but 100% survival occurred with other strains. The metal was loosely bound to the cells and there was no direct correlation between the amount adsorbed and the biological response.

Bacteria↗

Enzymic activities of cadmium- and zinc-tolerant strains of Klebsiella (Aerobacter) aerogenes growing in glucose-limited chemostats.

The activities of phosphatases and some enzymes of glucose metabolism were determined in K. aerogenes NCIB 418 and in two strains derived from it, resistant to 50 mug Cd2+ ml-1 and 16 mug Zn2+ ml-1 respectively, during growth at D = 0.38 h-1 in medium containing beta-glycerophosphate as sole phosphorus source and supplemented with Cd2+ and Zn2+, as appropriate, for the resistant strains. The pH-activity profiles of the phosphatases differed from strain to strain but all showed maximum activity at an acid pH and this activity was very much lower in the Zn2+-resistant strain than in the control and even lower in the Cd2+-resistant strain. Resistance to either metal was associated with decreased glucose-6-phosphate dehydrogenase activity and increased phosphoglucose isomerase activity, suggesting an increased flow of carbon through the Embden-Meyerhof pathway relative to the pentose phosphate pathway, but the efficiency of the conversion of glucose into biomass was largely unaffected. Glucose phosphoenolpyruvate phosphotransferase activity was also lower in the resistant strains.

Acid Phosphatase↗

Cadmium and zinc sensitivity and tolerance in Klebsiella (Aerobacter) aerogenes.

The resistance of strains of K. aerogenes NCIB 418 'trained' to Cd2+ or Zn2+ in liquid medium is graded to the training concentration. Training to Cd2+ increased the sensitivity to Zn2+ but training to Zn2+ reduced the sensitivity to Cd2+. The trained organisms, particularly those trained to Cd2+, grow slowly in medium containing the metals and the growth rates after 20 and 200 subcultures were not significantly different. The survival of untrained organisms on Cd2+-agar decreased progressively as the Cd2+ concentration was increased, but a threshold concentration of Zn2+ was necessary before any decrease set in. Very low concentrations of Zn2+ potentiated the lethal action of Cd2+ and vice versa, whereas chelating the metal ions with citrate, aspartate or gluconate eliminated it. Nutrient-limitation, as might occur in natural environments, also had a profound effect. Mg2+-limited organisms were particularly resistant to both metals whereas glucose-, NH+4 and PO3-4-limited organisms were very sensitive to Cd2+, and glucose- and K+-limited organisms to Zn2+.

Adaptation, Physiological↗

Insulinoma.

Explore the source record for details and available documents.

Adenoma, Islet Cell↗

Pullulanase synthesis in klebsiella (aerobacter) aerogenes strains growing in continuous culture.

1. Pullulanase synthesis was studied in 16 classified (N.C.I.B.) strains and in an industrial strain (R) of Klebsiella aerogenes grown in chemostats containing maltose as inducer and sole carbon source. 2. Maximum synthesis was associated with carbon-limited growth at a low dilution rate (about 0.2h(-1)). The enzyme remained firmly cell-bound and seemed to be located on the cell surface. 3. Three strains had high activity (R, N.C.I.B. 5938, 8017), twelve were intermediate, and two (N.C.I.B. 8153, 9146) had negligible activity but were inducible with pullulan. 4. Pullulan similarly induced low, but adequate, activity in the other strains in conditions (nutrient limitation other than carbon-limitation) in which pullulanase was otherwise very seriously repressed. Nevertheless, in carbon limitation pullulan induced no more enzyme than did maltose, maltotriose or oligosaccharide mixtures, and ;hyperactivity' never developed on protracted culture. 5. Cyclic AMP relieved the transient repression produced by adding glucose to maltose-limited cultures and a further change to glucose-limited conditions led to constitutive pullulanase synthesis. 6. Amylomaltase and alpha-glucosidase activities were also examined but in less detail. 7. The presence of pullulanase in maltose-limited growth is discussed, but no clear function can be assigned to it at present. The molar growth yields for all the strains were very similar, and no correlation was found between the overgrowth of one strain by another and pullulanase activity. Further, any function as a general branching enzyme in polysaccharide synthesis seems unlikely.

Culture Media↗

Phosphatase synthesis in Klebsiella (aerobacter) aerogenes growing in continuous culture.

1. Phosphatase synthesis was studied in Klebsiella aerogenes grown in a wide range of continuous-culture systems. 2. Maximum acid phosphatase synthesis was associated with nutrient-limited, particularly carbohydrate-limited, growth at a relatively low rate, glucose-limited cells exhibiting the highest activity. Compared with glucose as the carbon-limiting growth material, other sugars not only altered the activity but also changed the pH-activity profile of the enzyme(s). 3. The affinity of the acid phosphatase in glucose-limited cells towards p-nitrophenyl phosphate (K(m) 0.25-0.43mm) was similar to that of staphylococcal acid phosphatase but was ten times greater than that of the Escherichia coli enzyme. 4. PO(4) (3-)-limitation derepressed alkaline phosphatase synthesis but the amounts of activity were largely independent of the carbon source used for growth. 5. The enzymes were further differentiated by the effect of adding inhibitors (F(-), PO(4) (3-)) and sugars to the reaction mixture during the assays. In particular, it was shown that adding glucose, but not other sugars, stimulated the rate of hydrolysis of p-nitrophenyl phosphate by the acid phosphatase in carbohydrate-limited cells at low pH values (<4.6) but inhibited it at high pH values (>4.6). Alkaline phosphatase activity was unaffected. 6. The function of phosphatases in general is discussed and possible mechanisms for the glucose effect are outlined.

Acetates↗

Duodenoscopy.

Explore the source record for details and available documents.

Duodenal Ulcer↗